Patents by Inventor Barak Dayan

Barak Dayan has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 11983607
    Abstract: A quantum computing system, method and computer readable storage medium involve tuning a whispering-gallery mode optical resonator to support a resonance frequency associated with a transition frequency of an atom. Operation of a laser is controlled to cause the atom to be trapped adjacent the optical resonator and within the evanescent field portion. Based on an atom presence signal from an optical atom presence detector, an indication is provided that the atom is trapped adjacent the optical resonator. A frequency of a cooling laser is controlled to cool the atom, and the optical resonator is configured to define a closed loop-like mode including an evanescent field portion. The trapping laser is configured to cause the atom to be trapped adjacent the whispering-gallery mode resonator, and the cooling laser is configured to manipulate a state of the atom to thereby cool the atom.
    Type: Grant
    Filed: April 14, 2023
    Date of Patent: May 14, 2024
    Assignees: Yeda Research and Development Co. Ltd., Quantum Source Labs Ltd.
    Inventors: Gil Semo, Ziv Aqua, Oded Melamed, Dan Charash, Serge Rosenblum, Barak Dayan
  • Patent number: 11977955
    Abstract: A quantum computing system comprises a plurality of photonic cavities, a plurality of coupling locations for quantum emitter positioning, a photon generator configured to supply photons to the plurality of photonic cavities, and a plurality of photon output channels downstream of the plurality of cavities to output a graph state. Each coupling location is associated with a differing one of the plurality of photonic cavities. Quantum emitters associated with each coupling location are configured to mediate interactions between consecutive incoming photonic qubits to generate the graph state, and the photonic cavities are configured to couple photonic qubits to the quantum emitters.
    Type: Grant
    Filed: April 13, 2023
    Date of Patent: May 7, 2024
    Assignees: Yeda Research and Development Co. Ltd., Quantum Source Labs Ltd.
    Inventors: Gil Semo, Ziv Aqua, Oded Melamed, Dan Charash, Serge Rosenblum, Barak Dayan
  • Patent number: 11972324
    Abstract: Generating photonic graph states includes positioning a plurality of quantum emitters at a plurality of coupling sites associated with a plurality of cavities and initializing a state of a quantum emitter qubit associated with each of the plurality of quantum emitters. Photonic qubits are transmitted toward the plurality of the quantum emitters a first instance transmission for generating an entangling gate between the photonic qubits and the quantum emitter qubit in order to entangle the quantum emitter qubit and the photonic qubits. Following the first instance transmission, photonic qubits are transmitted toward the plurality of quantum emitters in a one second instance transmission for generating a SWAP gate between the photonic qubits and the quantum emitter qubits to map the quantum emitter qubits to photonic qubits.
    Type: Grant
    Filed: April 13, 2023
    Date of Patent: April 30, 2024
    Assignees: Yeda Research and Development Co. Ltd., Quantum Source Labs Ltd.
    Inventors: Gil Semo, Ziv Aqua, Oded Melamed, Dan Charash, Serge Rosenblum, Barak Dayan
  • Publication number: 20240127099
    Abstract: A quantum computing system includes a first resonator couplable to a first alkali atom, a second resonator couplable to a second alkali atom, and lasers for trapping, cooling, and manipulating the first alkali atom and the second alkali atom. Detectors detect a presence of the trapped first alkali atom and the trapped second alkali atom, and a processor is configured to receive at least one input signal from at least one of the detectors, the input signal indicating a presence of the trapped first alkali atom and the trapped second alkali atom, and, based on the received input, control at least some of the lasers to manipulate at least one of the trapped first alkali atom and the trapped second alkali atom to thereby generate photonic qubits using the trapped first alkali atom or generate entanglement between photonic qubits transmitted to the trapped second alkali atom.
    Type: Application
    Filed: October 10, 2023
    Publication date: April 18, 2024
    Applicants: QUANTUM SOURCE LABS LTD., YEDA RESEARCH AND DEVELOPMENT CO. LTD.
    Inventors: Gil SEMO, Ziv AQUA, Oded MELAMED, Dan CHARASH, Serge ROSENBLUM, Barak DAYAN
  • Publication number: 20230419150
    Abstract: A quantum computing system, method and computer readable storage medium involve tuning a whispering-gallery mode optical resonator to support a resonance frequency associated with a transition frequency of an atom. Operation of a laser is controlled to cause the atom to be trapped adjacent the optical resonator and within the evanescent field portion. Based on an atom presence signal from an optical atom presence detector, an indication is provided that the atom is trapped adjacent the optical resonator. A frequency of a cooling laser is controlled to cool the atom, and the optical resonator is configured to define a closed loop-like mode including an evanescent field portion. The trapping laser is configured to cause the atom to be trapped adjacent the whispering-gallery mode resonator, and the cooling laser is configured to manipulate a state of the atom to thereby cool the atom.
    Type: Application
    Filed: April 14, 2023
    Publication date: December 28, 2023
    Applicants: QUANTUM SOURCE LABS LTD., YEDA RESEARCH AND DEVELOPMENT CO. LTD.
    Inventors: Gil SEMO, Ziv AQUA, Oded MELAMED, Dan CHARASH, Serge ROSENBLUM, Barak DAYAN
  • Publication number: 20230419149
    Abstract: A quantum computing system comprises a plurality of photonic cavities, a plurality of coupling locations for quantum emitter positioning, a photon generator configured to supply photons to the plurality of photonic cavities, and a plurality of photon output channels downstream of the plurality of cavities to output a graph state. Each coupling location is associated with a differing one of the plurality of photonic cavities. Quantum emitters associated with each coupling location are configured to mediate interactions between consecutive incoming photonic qubits to generate the graph state, and the photonic cavities are configured to couple photonic qubits to the quantum emitters.
    Type: Application
    Filed: April 13, 2023
    Publication date: December 28, 2023
    Applicants: QUANTUM SOURCE LABS LTD., YEDA RESEARCH AND DEVELOPMENT CO. LTD.
    Inventors: Gil SEMO, Ziv AQUA, Oded MELAMED, Dan CHARASH, Serge ROSENBLUM, Barak DAYAN
  • Patent number: 11847535
    Abstract: A quantum computing system includes a first silicon nitride resonator couplable to a first alkali atom, a second silicon resonator couplable to a second alkali atom, and a plurality of lasers for trapping, cooling, and manipulating the first alkali atom and the second alkali atom. Detectors detect a presence of the trapped first alkali atom and the trapped second alkali atom, and a processor is configured to receive at least one input signal from at least one of the detectors, the input signal indicating a presence of the trapped first alkali atom and the trapped second alkali atom, and, based on the received input, control at least some of the plurality of lasers to manipulate at least one of the trapped first alkali atom and the trapped second alkali atom to thereby generate photonic qubits using the trapped first alkali atom or generate entanglement between photonic qubits transmitted to the trapped second alkali atom.
    Type: Grant
    Filed: April 14, 2023
    Date of Patent: December 19, 2023
    Assignees: Yeda Research and Development Co. Ltd., Quantum Source Labs Ltd.
    Inventors: Gil Semo, Ziv Aqua, Oded Melamed, Dan Charash, Serge Rosenblum, Barak Dayan
  • Publication number: 20230297872
    Abstract: A quantum computing system includes a first silicon nitride resonator couplable to a first alkali atom, a second silicon resonator couplable to a second alkali atom, and a plurality of lasers for trapping, cooling, and manipulating the first alkali atom and the second alkali atom. Detectors detect a presence of the trapped first alkali atom and the trapped second alkali atom, and a processor is configured to receive at least one input signal from at least one of the detectors, the input signal indicating a presence of the trapped first alkali atom and the trapped second alkali atom, and, based on the received input, control at least some of the plurality of lasers to manipulate at least one of the trapped first alkali atom and the trapped second alkali atom to thereby generate photonic qubits using the trapped first alkali atom or generate entanglement between photonic qubits transmitted to the trapped second alkali atom.
    Type: Application
    Filed: April 14, 2023
    Publication date: September 21, 2023
    Applicants: QUANTUM SOURCE LABS LTD., YEDA RESEARCH AND DEVELOPMENT CO. LTD.
    Inventors: Gil SEMO, Ziv AQUA, Oded MELAMED, Dan CHARASH, Serge ROSENBLUM, Barak DAYAN
  • Publication number: 20230267359
    Abstract: Generating photonic graph states includes positioning a plurality of quantum emitters at a plurality of coupling sites associated with a plurality of cavities and initializing a state of a quantum emitter qubit associated with each of the plurality of quantum emitters. Photonic qubits are transmitted toward the plurality of the quantum emitters a first instance transmission for generating an entangling gate between the photonic qubits and the quantum emitter qubit in order to entangle the quantum emitter qubit and the photonic qubits. Following the first instance transmission, photonic qubits are transmitted toward the plurality of quantum emitters in a one second instance transmission for generating a SWAP gate between the photonic qubits and the quantum emitter qubits to map the quantum emitter qubits to photonic qubits.
    Type: Application
    Filed: April 13, 2023
    Publication date: August 24, 2023
    Applicants: QUANTUM SOURCE LABS LTD., YEDA RESEARCH AND DEVELOPMENT CO. LTD.
    Inventors: Gil SEMO, Ziv AQUA, Oded MELAMED, Dan CHARASH, Serge ROSENBLUM, Barak DAYAN
  • Patent number: 10304535
    Abstract: A switch activated by a single control photon for routing a single target photon from either of two switch inputs to either of two switch outputs. The device is based on a single quantum emitter, such as an atom, coupled to a fiber-coupled, chip-based optical micro-resonator. A single reflected control photon toggles the switch from high reflection to high transmission mode, with no additional control fields required. The control and target photons are both in-fiber and practically identical, for compatibility with scalable architectures for quantum information processing.
    Type: Grant
    Filed: March 30, 2016
    Date of Patent: May 28, 2019
    Assignee: YEDA RESEARCH AND DEVELOPMENT CO. LTD.
    Inventors: Barak Dayan, Itay Shomroni, Serge Rosenblum
  • Publication number: 20190127392
    Abstract: A quantum device for interfacing Lanthanide ions with optical fields or microwave fields or both. The device includes waveguides or resonators or both for optical fields or microwave fields or for both. The device includes at least one surface to which a single customized Lanthanide molecular complex, or an ensemble, layer, multilayer or crystal of such, are attached or bonded. This places the Lanthanide ions within the optical or microwave fields or both. The ability to customize the molecular structure around each Lanthanide ion, and to control their orientation and position and nano-environment in general, enables minimizing the host lattice effects and non-radiative loss channels for each ion, and increasing their homogeneity. Accordingly, the advantages of the present invention include reduced inhomogeneities, narrower linewidths, extended fluorescence and coherence times, and higher operation temperatures.
    Type: Application
    Filed: October 24, 2018
    Publication date: May 2, 2019
    Applicant: YEDA RESEARCH AND DEVELOPMENT CO. LTD.
    Inventors: Barak DAYAN, Abraham SHANZER, Ori Ezrah MOR MARKOVSKY
  • Publication number: 20180053551
    Abstract: A switch activated by a single control photon for routing a single target photon from either of two switch inputs to either of two switch outputs. The device is based on a single quantum emitter, such as an atom, coupled to a fiber-coupled, chip-based optical micro-resonator. A single reflected control photon toggles the switch from high reflection to high transmission mode, with no additional control fields required. The control and target photons are both in-fiber and practically identical, for compatibility with scalable architectures for quantum information processing.
    Type: Application
    Filed: March 30, 2016
    Publication date: February 22, 2018
    Applicant: YEDA RESEARCH AND DEVELOPMENT CO. LTD.
    Inventors: Barak DAYAN, Itay SHOMRONI, Serge ROSENBLUM
  • Patent number: 7339717
    Abstract: A method and device are provided for automatically generating a key and a conjugate key to be used in an optical code division multiple access system. The method comprises applying a down conversion process to pump input light to thereby produce down converted broadband signal and idler fields that are complex conjugates of each other. The signal and idler fields thus serve as the key and its conjugate. Also provided according to the invention is a method for use in coding/decoding a signal in an optical code division multiple access system.
    Type: Grant
    Filed: April 15, 2004
    Date of Patent: March 4, 2008
    Assignee: Yeda Research and Development Company Ltd.
    Inventors: Avi Peer, Barak Dayan, Yaron Silberberg, Asher A Friesem